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Details

Autor(en) / Beteiligte
Titel
Liver‐specific deletion of de novo DNA methyltransferases protects against glucose intolerance in high‐fat diet‐fed male mice
Ist Teil von
  • The FASEB journal, 2024-05, Vol.38 (10), p.e23690-n/a
Ort / Verlag
United States
Erscheinungsjahr
2024
Link zum Volltext
Quelle
MEDLINE
Beschreibungen/Notizen
  • Alterations to gene transcription and DNA methylation are a feature of many liver diseases including fatty liver disease and liver cancer. However, it is unclear whether the DNA methylation changes are a cause or a consequence of the transcriptional changes. It is even possible that the methylation changes are not required for the transcriptional changes. If DNA methylation is just a minor player in, or a consequence of liver transcriptional change, then future studies in this area should focus on other systems such as histone tail modifications. To interrogate the importance of de novo DNA methylation, we generated mice that are homozygous mutants for both Dnmt3a and Dnmt3b in post‐natal liver. These mice are viable and fertile with normal sized livers. Males, but not females, showed increased adipose depots, yet paradoxically, improved glucose tolerance on both control diet and high‐fat diets (HFD). Comparison of the transcriptome and methylome with RNA sequencing and whole‐genome bisulfite sequencing in adult hepatocytes revealed that widespread loss of methylation in CpG‐rich regions in the mutant did not induce loss of homeostatic transcriptional regulation. Similarly, extensive transcriptional changes induced by HFD did not require de novo DNA methylation. The improved metabolic phenotype of the Dnmt3a/3b mutant mice may be mediated through the dysregulation of a subset of glucose and fat metabolism genes which increase both glucose uptake and lipid export by the liver. However, further work is needed to confirm this. We created a mouse with mature hepatocyte‐specific deletion of DNA methyltransferases. Males, but not females, showed increased adiposity, yet paradoxically, improved glucose tolerance. Comparison of the transcriptome and methylome in adult hepatocytes revealed that widespread loss of methylation in the mutant did not induce loss of homeostatic transcriptional regulation. The improved metabolic phenotype of the Dnmt3a/3b mutant mice may be mediated through the dysregulation of a subset of genes which increase both glucose uptake and lipid export by the liver.

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